WO2014169528A1 - 部件监管系统及监管方法 - Google Patents

部件监管系统及监管方法 Download PDF

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Publication number
WO2014169528A1
WO2014169528A1 PCT/CN2013/078098 CN2013078098W WO2014169528A1 WO 2014169528 A1 WO2014169528 A1 WO 2014169528A1 CN 2013078098 W CN2013078098 W CN 2013078098W WO 2014169528 A1 WO2014169528 A1 WO 2014169528A1
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WIPO (PCT)
Prior art keywords
component
component information
module
information data
information processing
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PCT/CN2013/078098
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English (en)
French (fr)
Inventor
翁铭廷
程大富
郭知广
吴思翔
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BOE Technology Group Co Ltd
Hefei Xinsheng Optoelectronics Technology Co Ltd
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BOE Technology Group Co Ltd
Hefei Xinsheng Optoelectronics Technology Co Ltd
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Publication of WO2014169528A1 publication Critical patent/WO2014169528A1/zh
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • G06Q10/06311Scheduling, planning or task assignment for a person or group
    • G06Q10/063114Status monitoring or status determination for a person or group

Definitions

  • the invention relates to the field of device device supervision, in particular to a component supervision system and a supervision method. Background technique
  • the requirements for the components used in the manufacture of liquid crystal displays are very strict, and the components used are usually subjected to steps of cleaning, pre-discharging, assembling, loading, disassembling, and the like. These operation steps are usually performed in the cleaning area, the inspection area, the storage area, the standby area, the equipment area, etc., and the components used in the manufacture of the liquid crystal display include a liquid crystal pump (LC Pump), a syringe (Syringe), and a nozzle (Nozzle).
  • LC Pump liquid crystal pump
  • Syringe syringe
  • Nozzle nozzle
  • a variety of components, such as a needle (Head) and a support member (Holder) use a large number of parts, and the operation steps of the parts are cumbersome.
  • the components used in the liquid crystal display are usually supervised in the form of manual filling, and it is necessary to record not only the name of the used component, the operating state, but also the operator number. , recording time, etc., when working in different areas, you need to adjust the table of parts to the operation area.
  • it is also necessary to establish a scrap list of the components so that the information of the components used in the manufacturing process of the liquid crystal display is complicated, the list of parts is large, the use of the components is not clear, and it is easy to miss, remember, etc., which is not easy. Monitor the parts used. Summary of the invention
  • the technical problem to be solved by the present invention is: How to provide a component supervision system and a supervision method to solve the problem that the recording accuracy is low, the supervision efficiency is poor, the supervision result is not intuitive and error-prone in the use operation of the component.
  • an embodiment of the present invention provides a component supervision system, and the component supervision system includes:
  • a component information reading module configured to read the component information, and send the component information to the component information processing monitoring module
  • a component information processing monitoring module configured to process the component information to generate component information And storing the component information data to the component information data storage module, and controlling the prompting module according to the component information data;
  • a component information data storage module configured to store the component information data
  • a component information data reading module configured to control reading and displaying the component information data according to the component information processing monitoring module
  • the prompting module is configured to send a prompt according to the component information processing monitoring module control when the component status is timed out or the component is used incorrectly.
  • the component state includes a state before the component is operated and a state after the operation.
  • the component information reading module includes a scanner and a radio frequency code reader, and the scanner and the radio frequency code reader are disposed in an operation area of the component, the scanner and the radio frequency code. The reader records the read time when reading the part information.
  • the component information processing monitoring module monitors the component according to the component information data, and when the component stays in its state for more than a component state timeout period, issues a prompt instruction to the prompting module.
  • the component information processing monitoring module presets a component operation using a preset state list, and when the component state in the component information data does not appear in the preset state list, prompts the prompting module instruction.
  • the component information processing monitoring module transmits the component information data to an output device of the corresponding component operating area according to the component status in the component information data.
  • the component information data storage module includes a process control zone component information data storage module disposed in the process control zone and an operation zone component information data storage module disposed in the operation zone, the process control zone storage module and the operation zone storage The module receives and stores the component information data sent by the component information processing monitoring module.
  • Embodiments of the present invention also provide a component monitoring method, the method comprising the steps of:
  • the component information reading module reads the component information before the operation of the component and after performing the operation, and sends the component information to the component information processing control module;
  • the component information processing monitoring module processes the received component information, generates component information data, monitors the component by using the component information data, and sends the component information data according to the component status in the component information data to Corresponding to the output device of the component operating area, and the control prompting module issues a prompt when the component state times out or the component uses an error;
  • the component information data storage module stores the component sent by the component information processing monitoring module.
  • the information data, component information data reading module controls reading and displaying the component information data according to the component information processing monitoring module.
  • the method further comprises the steps of: the component information processing monitoring module presetting the component operation using the preset state list, and when the component state in the component information data does not appear in the preset state list, the component information processing The monitoring module issues a prompt instruction to the prompting module.
  • the method further comprises the steps of: the component information processing monitoring module presetting the component state timeout period, the component information processing monitoring module monitoring the component according to the component information data, when the component stays in the state for more than When the time limit is exceeded, a prompt instruction is issued to the prompting module.
  • the component supervision system and the supervision method of the embodiment of the present invention improve the supervision efficiency and accuracy of the component by reading and recording the component information into the component information processing monitoring module, so that the component supervision data can be seen at a glance and can be in the component state. Prompt when timeout and component usage error, the system's error correction and time limit monitoring capabilities have been significantly improved.
  • FIG. 1 is a block diagram showing the structure of a component supervision system according to an embodiment of the present invention
  • FIG. 2 is a structural diagram of a component information data storage module of a component supervision system according to an embodiment of the present invention
  • 3 is a flow chart showing the steps of the component supervision method of the embodiment of the invention. detailed description
  • the component supervision system of the embodiment of the present invention is as shown in FIG. 1.
  • the component supervision system 1 includes: a component information reading module 2, a component information processing monitoring module 3, a component information data storage module 4, a component information data reading module 5, and
  • the prompting module 6, the component information processing monitoring module 3 is connected to the component information reading module 2, the component information data storage module 4, the component information data reading module 5, and the prompting module 6, the component information data storage module 4 It is connected to the component information data reading module 5.
  • the component information reading module 2 is configured to read component information, where the component information includes components Number, component status, read time, and operator number, and send the part information to the component information processing monitoring module 3;
  • the component information processing monitoring module 3 is configured to process the component information to generate component information data, store the component information data to the component information data storage module 4, and control the prompting module 6 according to the component information data;
  • the component information data storage module 4 is configured to store the component information data
  • the component information data reading module 5 is configured to control reading and displaying the component information data according to the component information processing monitoring module 3;
  • the prompting module 6 is configured to control the issuing of the prompt according to the component information processing monitoring module 3 when the component status is timed out or the component is used incorrectly.
  • the components used in the manufacture of the liquid crystal display are each provided with a number, the components are sent to a designated operation area when the operation is performed, and the component information reading module disposed in the operation area before and after the operation is performed. 2 Reading the component information, the component information including a component number, a component state, a reading time, an operator number, and the like. By reading the module information module, the entire information of the component can be read quickly and accurately, saving time and reducing the error rate of recording.
  • the component information reading module 2 includes a scanner and a radio frequency code reader, the scanner is for reading a bar code disposed on a surface of the component, and the radio frequency code reader is used for reading integration.
  • the scanner and radio frequency code reader are disposed within an operational region of the component, and the scanner and radio frequency code reader record the read time when the component information is read.
  • the component state includes a state before the component is operated and a state after the operation.
  • the recording of the state of the component the operating state of the component, the component information before the start of the operation, and the component information after the operation is completed can be facilitated for the next operation of the component.
  • the component information reading module 2 After the component information reading module 2 reads the component information, the component information is sent to the component information processing monitoring module 3, and the component information processing monitoring module 3 processes the component information to generate component information.
  • the component information data includes component information of all operations of the component, that is, component information that is all operated by the component is integrated to generate component information data, and the component information processing monitoring module 3 monitors according to the component information data. The component.
  • the component information processing monitoring module 3 transmits the component information data to the output device of the corresponding component operating area according to the component status in the component information data.
  • Information processing monitoring module The block 3 transmits the component information data to the operation area according to the component status recorded by the component in the component information data before the operation, and the component information data is quickly called, so that the operator can conveniently obtain the component information data. Take action.
  • Fig. 2 shows a component information data storage module 4 for receiving and storing the component information processing monitoring module 3.
  • the component information data storage module 4 includes a process control area storage module 410 disposed in the process control area and an operation area storage module 420 disposed in the operation area, the process control area storage module 410 and the operation area storage module 420 and the The component information processing monitoring module 3 is connected.
  • the operation area storage module 420 is disposed in each operation area where the component operates, such as the cleaning area storage module 421, the inspection area storage module 422, the storage area storage module 423, the standby area storage module 424, and the equipment area in FIG.
  • the storage module 425 stores component information data sent by the component information processing monitoring module 3 to the operation area in the operation area storage module 420.
  • the component information data storage module 4 further includes a scrap storage module for storing component information data of the scrapped component.
  • the component information data reading module 5 is disposed corresponding to the component information data storage module 4, and according to the component information processing monitoring mode 3, the reading and displaying of the component information data is controlled, which facilitates reading of the component information data. display.
  • the component information processing monitoring module 3 presets a component state timeout period for the operation of each component, and according to the component information data, when the component stays in its state for more than the component state timeout period,
  • the prompting module 6 issues a prompting instruction, and the prompting module 6 issues a component status timeout prompt.
  • the component information processing monitoring module 3 presets a state list for the operation of each component, and when the component state in the component information data does not appear in the preset state list, the component using the operation is used incorrectly.
  • the operation should be performed using the correct component in the status list, and the component information processing monitoring module issues a prompting instruction to the prompting module 6, and the prompting module 6 issues a component error prompt.
  • a component monitoring method is shown in FIG. 3, and the method includes the following steps: 51, the component information reading module reads the component information before and after the operation of the component, and sends the component information to the component information processing control module;
  • the component information processing monitoring module processes the received component information, generates component information data, monitors the component by using the component information data, and sends the component information data according to the component status in the component information data to Corresponding to the output device of the component operating area, and the control prompting module issues a prompt when the component state times out or the component uses an error;
  • the component information data storage module stores the component information data sent by the component information processing monitoring module, and the component information data reading module reads and displays the component information data.
  • the method further comprises the steps of: the component information processing monitoring module presetting the component operation using the preset state list, and when the component state in the component information data does not appear in the preset state list, the component information processing The monitoring module issues a prompt instruction to the prompting module.
  • the method further comprises the steps of: the component information processing monitoring module presetting the component state timeout period, the component information processing monitoring module monitoring the component according to the component information data, when the component stays in the state for more than When the time limit is exceeded, a prompt instruction is issued to the prompting module.
  • components such as a liquid crystal pump, a syringe, a showerhead, a needle, and a support member are inspected in an inspection area, and the component after inspection confirms the component information through the component information reading module, wherein the RF code reader reads
  • the component information of the liquid crystal pump and the nozzle, the component information of the syringe and the support member is read by the scanner, and the needles of the same model are grouped into 16 groups, and the component information of each needle of each group is read, and the component information includes Part number, part status, read time, and operator number.
  • the component information reading module transmits the component information to the component information processing monitoring module, and the component information processing monitoring module processes the component information to generate component information data, and stores the component information data in the The component information data storage module.
  • the component information reading module When performing the cleaning operation on the component, the component information reading module reads the component information before the component cleaning operation, indicating that the component is about to be cleaned, and sends the component information to the component information processing monitoring module.
  • the component information processing monitoring module processes the component information to generate component information data, and sends the component information data to the cleaning area, and the component information data reading module displays the component information data, after the component cleaning is completed,
  • the component information reading module reads the component information, indicating that the component completes the cleaning operation, and sends the component information to the component information processing monitoring module, where the component information processing monitoring module processes the component information to generate component information data. And storing the component information in the component information data storage module.
  • the component information reading module is a mobile component information reading module.
  • the component information reading module reads the component information before the component performs the operation, indicating that the component is about to perform the cleaning, and the component is The information is sent to the component information processing monitoring module, and the component information processing monitoring module processes the component information to generate component information data, and sends the component information data to an operation area corresponding to the operation, and the component information data reading module Displaying the component information data, after the component operation is completed, the component information reading module reads the component information, indicating that the component operation is completed, and transmitting the component information to the component information processing monitoring module, and the component information processing The monitoring module processes the component information to generate component information data, and stores the component information in the component information data storage module.
  • the component information processing monitoring module adds information such as waste time, waste cause, audit time, and the like to the component information data, and transfers the component information data to the scrap area storage module.
  • the component information processing monitoring module monitors, during the process of supervising the component, the time at which the component stays in the state according to the component state in the component information data, when the component stays in the state for more than When the status timeout period is limited, the component information processing monitoring module sends a prompting instruction to the prompting module, and the prompting module issues a component status timeout prompt.
  • the prompting module issues a prompt to prompt to clean the component; when the component operates in the inspection zone for more than 4 hours, the prompting module issues a prompt to prompt the component to be inspected;
  • the prompting module issues a prompt to prompt the parts to be cleaned again; the parts are operated in the standby area and the equipment area, the cylinder is used for more than 48 hours, and the liquid crystal pump and the nozzle are used for more than 7 days to prompt the module to issue Prompt, prompt to perform a downtime operation on the part.
  • the component information processing monitoring module monitors the component state according to the component state in the component information data during the process of supervising the component, and the component state in the component information data does not appear in the preset state In the list, the component used to perform the operation is incorrectly used, and the correct component in the state list should be used for operation.
  • the component information processing monitoring module issues a prompt instruction to the prompting module, and the prompting module issues a component error prompt. .
  • the component supervision system and the supervision method of the embodiment of the present invention by reading and recording the component information to Monitoring in the component information processing monitoring module improves the supervision efficiency and accuracy of the components, makes the supervision data of the components clear at a glance, and can prompt when the component status times out and component usage errors, so that the system's error correction and time limit monitoring capability are obtained. A significant improvement.

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Abstract

本发明涉及设备器件监管领域,特别涉及一种部件监管系统及监管方法。公开了一种部件监管系统及监管方法,所述部件管理系统包括:部件信息读取模块、部件信息处理监控模块、部件信息数据读取模块和提示模块,所述部件监管方法包括:步骤S1部件信息读取模块读取部件信息,并将所述部件信息发送给部件信息处理控制模块;S2部件信息处理监控模块对所述部件信息进行处理,生成部件信息数据,利用所述部件信息数据监控所述部件;以及S3部件信息数据存储模块存储所述部件信息数据,部件信息数据读取模块读取并显示所述部件信息数据。本发明的部件监管系统及监管方法,提高了部件的监管效率和准确率,能够在部件状态超时和部件使用错误时进行提示,使系统的纠错性和时限监控能力得到了明显的提升。

Description

部件监管系统及监管方法 技术领域
本发明涉及设备器件监管领域,特别涉及一种部件监管系统及监管方法。 背景技术
在液晶显示制造中,对制造液晶显示器过程中使用的部件监管要求很严, 使用的部件通常会经过清洗、 预吐、 组装、 上机、 拆卸等步骤操作。 这些操 作步骤通常在清洗区、 检查区、 保存区、 待机区、 设备区等进行, 而制造液 晶显示器过程中使用的部件又包括液晶泵(LC Pump )、 针筒 (Syringe ), 喷 头 ( Nozzle )、 针头 (Head )和支撑部件(Holder )等多种部件, 使用的部件 较多, 且部件的操作步骤较为繁瑣。
现有技术在对液晶显示器, 尤其对液晶面板制造过程中使用的部件监管 通常采用人工填表的形式对使用的部件进行监管, 不仅需要记录使用部件的 名称、 操作状态、 还需要记录操作人员编号、 记录时间等, 在不同区域进行 操作时还需要将部件的表格调到该操作区域。 在部件出现问题无法使用时, 还需要建立部件报废清单,使得液晶显示器制造过程中使用部件的信息复杂, 部件清单多, 部件使用的情况不清晰, 容易出现漏记、 记错等情况, 不容易 对使用的部件进行监控。 发明内容
(一)要解决的技术问题
本发明要解决的技术问题是: 如何提供一种部件监管系统及监管方法, 以解决在部件使用操作过程中记录准确率低, 监管效率差, 监管结果不直观 且容易出错的问题。
(二)技术方案
为解决上述技术问题, 本发明的实施例提供了一种部件监管系统, 所述 部件监管系统包括:
部件信息读取模块, 用于读取部件信息, 并将所述部件信息发送给部件 信息处理监控模块;
部件信息处理监控模块, 用于对所述部件信息进行处理生成部件信息数 据, 将所述部件信息数据存储至部件信息数据存储模块, 并根据所述部件信 息数据控制提示模块;
部件信息数据存储模块, 用于存储所述部件信息数据;
部件信息数据读取模块, 用于根据所述部件信息处理监控模块控制读取 和显示所述部件信息数据; 以及
提示模块, 用于在部件状态超时或部件使用错误时, 根据所述部件信息 处理监控模块控制发出提示。
优选地, 所述部件状态包括所述部件操作前的状态和操作后的状态。 优选地, 所述部件信息读取模块包括扫码器和射频编码读码器, 所述扫 码器和射频编码读码器设置在所述部件的操作区域内, 所述扫码器和射频编 码读码器在读取部件信息时记录所述读取时间。
优选地, 所述部件信息处理监控模块根据所述部件信息数据监控所述部 件, 当所述部件在其状态下停留时间超过部件状态超时时限时, 向所述提示 模块发出提示指令。
优选地, 所述部件信息处理监控模块预先设置部件操作使用预设状态列 表, 当所述部件信息数据中的部件状态并没出现在所述预设状态列表中时, 向所述提示模块发出提示指令。
优选地, 所述部件信息处理监控模块根据部件信息数据中的部件状态将 所述部件信息数据发送至对应部件操作区的输出设备上。
优选地, 所述部件信息数据存储模块包括设置在处理控制区的处理控制 区部件信息数据存储模块和设置在操作区的操作区部件信息数据存储模块, 所述处理控制区存储模块和操作区存储模块接收并存储所述部件信息处理监 控模块发送的部件信息数据。
本发明的实施例还提供一种部件监管方法, 该方法包括步骤:
S1 , 部件信息读取模块在所述部件进行操作之前和进行操作之后读取部 件信息, 并将所述部件信息发送给部件信息处理控制模块;
52, 部件信息处理监控模块将接收到的部件信息进行处理, 生成部件信 息数据, 利用所述部件信息数据监控所述部件, 根据所述部件信息数据中的 部件状态将所述部件信息数据发送至对应部件操作区的输出设备上, 并在部 件状态超时或部件使用错误时控制提示模块发出提示; 以及
53 , 部件信息数据存储模块存储所述部件信息处理监控模块发送的部件 信息数据, 部件信息数据读取模块据所述部件信息处理监控模块控制读取并 显示所述部件信息数据。
优选地, 该方法还包括步骤: 部件信息处理监控模块预先设置部件操作 使用预设状态列表, 当部件信息数据中的部件状态并没出现在所述预设状态 列表中时, 所述部件信息处理监控模块向所述提示模块发出提示指令。
优选地, 该方法还包括步骤: 部件信息处理监控模块预先设置部件状态 超时时限,所述部件信息处理监控模块根据所述部件信息数据监控所述部件, 当所述部件在其状态下停留时间超过停留时限时, 向所述提示模块发出提示 指令。
(三)有益效果
本发明实施例的部件监管系统及监管方法, 通过将部件信息读取记录到 部件信息处理监控模块中进行监控, 提高了部件的监管效率和准确率, 使部 件的监管数据一目了然, 能够在部件状态超时和部件使用错误时进行提示, 使系统的纠错性和时限监控能力得到了明显的提升。 附图说明
图 1是本发明实施例的部件监管系统的模块结构图;
图 2是本发明实施例的部件监管系统的部件信息数据存储模块结构图; 以及
图 3是发明实施例的部件监管方法的步骤流程图。 具体实施方式
下面结合附图和实施例, 对本发明实施例的具体实施方式作进一步详细 描述。 以下实施例用于说明本发明, 但不用来限制本发明的范围。
本发明实施例的部件监管系统如图 1所示, 该部件监管系统 1包括: 部 件信息读取模块 2、 部件信息处理监控模块 3、 部件信息数据存储模块 4、 部 件信息数据读取模块 5和提示模块 6, 所述部件信息处理监控模块 3与所述 部件信息读取模块 2、 部件信息数据存储模块 4、 部件信息数据读取模块 5及 提示模块 6连接, 所述部件信息数据存储模块 4与所述部件信息数据读取模 块 5连接。
所述部件信息读取模块 2, 用于读取部件信息, 所述部件信息包括部件 的编号、 部件状态、 读取时间、 和操作人员编号, 并将所述部件信息发送给 部件信息处理监控模块 3;
所述部件信息处理监控模块 3 , 用于对所述部件信息进行处理生成部件 信息数据, 将所述部件信息数据存储至部件信息数据存储模块 4, 并根据所 述部件信息数据控制提示模块 6;
所述部件信息数据存储模块 4, 用于存储所述部件信息数据;
所述部件信息数据读取模块 5 , 用于根据所述部件信息处理监控模块 3 控制读取和显示所述部件信息数据;
所述提示模块 6, 用于在部件状态超时或部件使用错误时, 根据所述部 件信息处理监控模块 3控制发出提示。
在制造液晶显示器过程中使用的部件均设置有编号, 所述部件在进行操 作时被送到指定的操作区, 在进行操作前和操作后设置在所述操作区的所述 部件信息读取模块 2读取所述部件信息, 所述部件信息包括部件的编号、 部 件状态、 读取时间、 和操作人员编号等。 通过所述部件信息读取模 2块能够 快速准确大量的读取部件的全部信息, 节省了时间, 降低了记录的错误率。
优选地, 所述部件信息读取模块 2包括扫码器和射频编码读码器, 所述扫码器用于读取设置在部件表面的条形编码, 所述射频编码读码器 用于读取集成在部件内部的编码。 所述扫码器和射频编码读码器设置在所述 部件的操作区域内, 所述扫码器和射频编码读码器在读取部件信息时记录所 述读取时间。 通过设置扫码器和射频编码读码器使得所述部件信息读取模块 能够读取不同部件的不同类型编码, 从而提高了系统的兼容性。
优选地, 所述部件状态包括所述部件操作前的状态和操作后的状态。 通 过该种部件状态的记录能够清晰的获得部件的操作状态、 操作开始前的部件 信息, 操作结束后的部件信息, 有利于部件下一步的操作。
所述部件信息读取模块 2读取所述部件信息后, 将所述部件信息发送给 所述部件信息处理监控模块 3 , 所述部件信息处理监控模块 3对所述部件信 息进行处理生成部件信息数据, 所述部件信息数据包含所述部件全部操作的 部件信息, 即将对所述部件全部操作的部件信息进行整合从而生成部件信息 数据, 所述部件信息处理监控模块 3根据所述部件信息数据监控所述部件。
优选地, 所述部件信息处理监控模块 3根据部件信息数据中的部件状态 将所述部件信息数据发送至对应部件操作区的输出设备上。 信息处理监控模 块 3根据部件信息数据中部件在进行操作前记录的部件状态将所述部件信息 数据发送到该操作区, 实现了部件信息数据的快速调用, 使操作人员能够方 便的获得所述部件信息数据以便进行操作。
图 2示出了用于接收并存储所述部件信息处理监控模块 3发送的部件信 息数据存储模块 4。 所述部件信息数据存储模块 4包括设置在处理控制区的 处理控制区存储模块 410和设置在操作区的操作区存储模块 420, 所述处理 控制区存储模块 410和操作区存储模块 420与所述部件信息处理监控模块 3 连接。
所述操作区存储模块 420设置于所述部件进行操作的各个操作区, 例如 图 2中的清洗区存储模块 421、 检查区存储模块 422、 保存区存储模块 423、 待机区存储模块 424、设备区存储模块 425 , 所述部件信息处理监控模块 3向 所述操作区发送的部件信息数据存储在所述操作区存储模块 420中。
优选的, 所述部件信息数据存储模块 4还包括报废存储模块, 用于存储 报废部件的部件信息数据。
所述部件信息数据读取模块 5与所述部件信息数据存储模块 4对应设置 , 据所述部件信息处理监控模 3控制读取并显示所述部件信息数据, 方便了部 件信息数据的读取和显示。
优选地, 所述部件信息处理监控模块 3针对各个部件的操作预先设置部 件状态超时时限, 根据所述部件信息数据, 当所述部件在其状态下停留时间 超过所述部件状态超时时限时, 向所述提示模块 6发出提示指令, 所述提示 模块 6发出部件状态超时提示。 通过预先设置部件状态超时时限对所述部件 进行监控, 能够更好地监控部件的状态, 加快了部件的操作速度, 避免了时 间的浪费。
优选地, 所述部件信息处理监控模块 3针对各个部件的操作预先设置状 态列表, 当部件信息数据中的部件状态并没出现在所述预设状态列表中时, 说明进行该操作的部件使用错误, 应使用所述状态列表中的正确部件进行操 作, 所述部件信息处理监控模块向所述提示模块 6发出提示指令, 所述提示 模块 6发出部件错误提示。 通过设置状态列表能够清楚的确定是否使用了正 确的部件, 并在使用错误部件时自动发出错误提示, 有效地减少了使用部件 过程中的错误率。
本发明实施例的一种部件监管方法如图 3所示, 该方法包括步骤: 51 , 部件信息读取模块在所述部件进行操作之前和进行操作之后读取部 件信息, 并将所述部件信息发送给部件信息处理控制模块;
52, 部件信息处理监控模块将接收到的部件信息进行处理, 生成部件信 息数据, 利用所述部件信息数据监控所述部件, 根据所述部件信息数据中的 部件状态将所述部件信息数据发送至对应部件操作区的输出设备上, 并在部 件状态超时或部件使用错误时控制提示模块发出提示; 以及
53 , 部件信息数据存储模块存储所述部件信息处理监控模块发送的部件 信息数据, 部件信息数据读取模块读取并显示所述部件信息数据。
优选地, 该方法还包括步骤: 部件信息处理监控模块预先设置部件操作 使用预设状态列表, 当部件信息数据中的部件状态并没出现在所述预设状态 列表中时, 所述部件信息处理监控模块向所述提示模块发出提示指令。
优选地, 该方法还包括步骤: 部件信息处理监控模块预先设置部件状态 超时时限,所述部件信息处理监控模块根据所述部件信息数据监控所述部件, 当所述部件在其状态下停留时间超过停留时限时, 向所述提示模块发出提示 指令。
例如, 液晶泵、 针筒、 喷头、 针头和支撑部件等部件在检查区进行检查 操作, 检查确认后的部件通过所述部件信息读取模块读取部件信息, 其中, 射频编码读码器读取液晶泵和喷头的部件信息, 通过扫码器读取针筒和支撑 部件的部件信息, 相同型号的针头每 16个组成一组, 读取每组每个针头的部 件信息, 所述部件信息包括部件的编号、 部件状态、 读取时间、 和操作人员 编号等。 部件信息读取模块将所述部件信息发送给所述部件信息处理监控模 块,所述部件信息处理监控模块对所述部件信息进行处理生成部件信息数据, 并将所述部件信息数据存储在所述部件信息数据存储模块中。
在对所述部件进行清洗操作时, 所述部件信息读取模块在部件清洗操作 前读取部件信息, 表明部件即将进行清洗, 并将所述部件信息发送给所述部 件信息处理监控模块, 所述部件信息处理监控模块对所述部件信息进行处理 生成部件信息数据, 将所述部件信息数据发送给清洗区, 部件信息数据读取 模块显示所述部件信息数据, 在部件清洗完成后, 所述部件信息读取模块读 取部件信息, 表明部件完成清洗操作, 将所述部件信息发送给所述部件信息 处理监控模块, 所述部件信息处理监控模块对所述部件信息进行处理生成部 件信息数据, 并将所述部件信息存储在所述部件信息数据存储模块中。 优选地, 所述部件信息读取模块为移动式部件信息读取模块。
同理, 所述部件在进行预吐、 组装、 上机、 拆卸等步骤时, 所述部件信 息读取模块在部件进行操作前读取部件信息, 表明部件即将进行该清洗, 并 将所述部件信息发送给所述部件信息处理监控模块, 所述部件信息处理监控 模块对所述部件信息进行处理生成部件信息数据, 将所述部件信息数据发送 给操作对应的操作区, 部件信息数据读取模块显示所述部件信息数据, 在部 件操作完成后, 所述部件信息读取模块读取部件信息, 表明部件操作完成, 将所述部件信息发送给所述部件信息处理监控模块, 所述部件信息处理监控 模块对所述部件信息进行处理生成部件信息数据, 并将所述部件信息存储在 所述部件信息数据存储模块中。
所述部件在报废后, 所述部件信息处理监控模块在所述部件信息数据中 添加 废时间、 废原因、 审核时间等信息, 并将所述部件信息数据转移至 报废区存储模块中。
所述部件信息处理监控模块, 在对部件进行监管的过程中, 根据所述部 件信息数据中的部件状态监控所述部件停留在该状态的时间, 当所述部件停 留在该状态的时间超出所述状态超时时限时, 所述部件信息处理监控模块, 向所述提示模块发出提示指令, 所述提示模块发出部件状态超时提示。 例如 部件在所述清洗区进行操作超过 4小时时提示模块发出提示, 提示对部件进 行清洗; 部件在所述检查区进行操作超过 4小时时提示模块发出提示, 提示 对部件进行检查; 部件在所述保存区进行操作超过 15天时提示模块发出提 示, 提示对部件进行再次清洗; 部件在所述待机区和设备区进行操作, 针筒 使用超过 48小时、 液晶泵和喷头使用超过 7天时提示模块发出提示, 提示对 部件进行下机操作。
所述部件信息处理监控模块, 在对部件进行监管的过程中, 根据所述部 件信息数据中的部件状态监控所述部件状态, 当部件信息数据中的部件状态 并没出现在所述预设状态列表中时, 说明进行该操作的部件使用错误, 应使 用所述状态列表中的正确部件进行操作, 所述部件信息处理监控模块向所述 提示模块发出提示指令, 所述提示模块发出部件错误提示。
本实施例中出现的部件、 时间、 周期均为举例说明, 并不对本发明的技 术方案做出限定, 本领域技术人员可根据实际情况灵活选取和操作。
本发明实施例的部件监管系统及监管方法, 通过将部件信息读取记录到 部件信息处理监控模块中进行监控, 提高了部件的监管效率和准确率, 使部 件的监管数据一目了然, 能够在部件状态超时和部件使用错误时进行提示, 使系统的纠错性和时限监控能力得到了明显的提升。
以上实施方式仅用于说明本发明, 而并非对本发明的限制, 有关技术领 域的普通技术人员, 在不脱离本发明的精神和范围的情况下, 还可以做出各 种变化和变型, 因此所有等同的技术方案也属于本发明的范畴, 本发明的专 利保护范围应由权利要求限定。

Claims

权 利 要 求 书
1、 一种部件监管系统, 包括:
部件信息读取模块, 用于读取部件信息, 并将所述部件信息发送给部件 信息处理监控模块;
部件信息处理监控模块, 用于对所述部件信息进行处理生成部件信息数 据, 将所述部件信息数据存储至部件信息数据存储模块, 并根据所述部件信 息数据控制提示模块;
部件信息数据存储模块, 用于存储所述部件信息数据;
部件信息数据读取模块, 用于根据所述部件信息处理监控模块控制读取 和显示所述部件信息数据; 以及
提示模块, 用于在部件状态超时或部件使用错误时, 根据所述部件信息 处理监控模块控制发出提示。
2、 如权利要求 1所述的部件监管系统, 其特征在于, 所述部件状态包括 所述部件操作前的状态和操作后的状态。
3、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息读取 模块包括扫码器和射频编码读码器, 所述扫码器和射频编码读码器设置在所 述部件的操作区域内, 所述扫码器和射频编码读码器在读取部件信息时记录 所述读取时间。
4、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息处理 监控模块根据所述部件信息数据监控所述部件, 当所述部件在其状态下停留 时间超过部件状态超时时限时, 向所述提示模块发出提示指令。
5、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息处理 监控模块预先设置部件操作使用预设状态列表, 当所述部件信息数据中的部 件状态并没出现在所述预设状态列表中时, 向所述提示模块发出提示指令。
6、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息处理 监控模块根据部件信息数据中的部件状态将所述部件信息数据发送至对应部 件操作区的输出设备上。
7、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息数据 存储模块包括设置在处理控制区的处理控制区部件信息数据存储模块和设置 在操作区的操作区部件信息数据存储模块, 所述处理控制区存储模块和操作 区存储模块接收并存储所述部件信息处理监控模块发送的部件信息数据。
8、如权利要求 1所述的部件监管系统, 其特征在于, 所述部件信息处理 监控模块与所述部件信息读取模块、 部件信息数据存储模块、 部件信息数据 读取模块及提示模块连接, 所述部件信息数据存储模块与所述部件信息数据 读取模块连接
9、 一种部件监管方法, 包括步骤:
部件信息读取模块在所述部件进行操作之前和进行操作之后读取部件信 息, 并将所述部件信息发送给部件信息处理控制模块(S1 );
部件信息处理监控模块将接收到的部件信息进行处理, 生成部件信息数 据, 利用所述部件信息数据监控所述部件, 根据所述部件信息数据中的部件 状态将所述部件信息数据发送至对应部件操作区的输出设备上, 并在部件状 态超时或部件使用错误时控制提示模块发出提示 (S2 ); 以及
部件信息数据存储模块存储所述部件信息处理监控模块发送的部件信息 数据, 部件信息数据读取模块据所述部件信息处理监控模块控制读取并显示 所述部件信息数据(S3 )。
10、 如权利要求 9所述的部件监管方法, 其特征在于, 该方法还包括步 骤: 部件信息处理监控模块预先设置部件操作使用预设状态列表, 当部件信 息数据中的部件状态并没出现在所述预设状态列表中时, 所述部件信息处理 监控模块向所述提示模块发出提示指令。
11、 如权利要求 9所述的部件监管方法, 其特征在于, 该方法还包括步 骤: 部件信息处理监控模块预先设置部件状态超时时限, 所述部件信息处理 监控模块根据所述部件信息数据监控所述部件, 当所述部件在其状态下停留 时间超过停留时限时, 向所述提示模块发出提示指令。
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101692587A (zh) * 2009-09-09 2010-04-07 重庆大学 变电站安全工器具在线监管系统及其方法
CN201548988U (zh) * 2009-06-09 2010-08-11 北京千禧维讯技术服务有限公司 一种仓库网络电子盘点调度装置
CN202502555U (zh) * 2012-03-05 2012-10-24 武汉鹏晔科技有限公司 一种电网安全工器具智能调控装置

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102042909A (zh) * 2009-10-14 2011-05-04 中国北车集团大同电力机车有限责任公司 机车故障诊断方法和系统
CN102316303B (zh) * 2010-06-29 2013-07-10 广东迅通科技股份有限公司 一种设备运行状态监控系统

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201548988U (zh) * 2009-06-09 2010-08-11 北京千禧维讯技术服务有限公司 一种仓库网络电子盘点调度装置
CN101692587A (zh) * 2009-09-09 2010-04-07 重庆大学 变电站安全工器具在线监管系统及其方法
CN202502555U (zh) * 2012-03-05 2012-10-24 武汉鹏晔科技有限公司 一种电网安全工器具智能调控装置

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